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风能和光伏智能微电网并网研究

Abstract第7页
摘要第8-12页
CHAPTER 1 GENERAL INTRODUCTION第12-21页
    1.1 Introduction第12-13页
    1.2 Significance of the Research第13-14页
    1.3 Problem State and Motivation of this Study第14-19页
        1.3.1 Damage to the Ozone layer affects Development第14页
        1.3.2 Frequent Power Outage第14-15页
        1.3.3 Protection and System Sustainability第15页
        1.3.4 Types of protection第15-18页
        1.3.5 Economic Challenges第18页
        1.3.6 Unawareness to pinpoint systems Load第18页
        1.3.7 Meter Reading:第18-19页
    1.4 Goals and Objective第19页
    1.5 Thesis Outline第19-21页
CHAPTER 2 Structure of the Hybrid system WD and PV source第21-43页
    2.1 Introduction第21页
    2.2 Structure of the renewable source hybrid system第21-30页
        2.2.1 Introduction第21-22页
        2.2.2 Description of the PV and WD Hybrid system第22-23页
        2.2.3 Description of a Photovoltaic System第23-30页
            2.2.3.1 Introduction to Photovoltaic conversion Systems第23-26页
            2.2.3.2 Solar cell materials第26-28页
            2.2.3.3 PV Cell, Module and Array第28-30页
    2.3 Description of a Wind Turbine第30-36页
        2.3.1 Introduction to Wind Energy第30-31页
        2.3.2 Structure of Wind Turbine第31-33页
            2.3.2.1 Structure of Conversion for small and large turbines第32-33页
            2.3.2.2 Types of Turbines第33页
        2.3.3 Description of a Wind Turbine第33-36页
            2.3.3.1 The rotor第34页
            2.3.3.2 The nacelle第34-35页
            2.3.3.3 The tower第35-36页
    2.4 Choice between fixed Speed and Speed variation第36-40页
        2.4.1 Constant Speed Wind Turbines第36-37页
        2.4.2 Wind Turbine with a Variable Speed第37-40页
            2.4.2.1 The Importance of Smart Variable Speed第39-40页
    2.5 Residential and Commercial Micro Grid interconnection of WD and PVhybrid第40页
    2.6 Electronic Conversion第40-41页
        2.6.1 RECTIFIERS第40页
        2.6.2 REGULATORS第40-41页
        2.6.3 DC TO DC CONVERTERS第41页
        2.6.4 BATTERIES第41页
        2.6.5 INVERTERS第41页
        2.6.6 DC BUS第41页
    2.7 Chapter 2 Summary第41-43页
Chapter 3 Antigua and Barbuda’s and its Energy Sector第43-53页
    3.1 Introduction第43页
    3.2 Potential and present Scope operation第43-47页
        3.2.1 Utility Grid第44-47页
            3.2.1.1 Joined Venture 100% fossil fuel Electrical Energy input第45页
            3.2.1.2 Joined Venture long-term and Short-term predicaments第45-47页
        3.2.2 APUA/ APCL conditions第47页
    3.3 The Utility Grid Generators第47-49页
        3.3.1 Spinning reserves第47-48页
        3.3.2 Voltage and Frequency Control第48-49页
    3.4 Peak demand in Antigua and Barbuda- to population第49-51页
    3.5 Plans to commence a Wind Turbine project第51页
    3.6 Chapter 3 Conclusion第51-53页
Chapter 4 Smart Grid interconnection第53-63页
    4.1 The Smart system第53-54页
    4.2 Importance of Smart system Interconnection第54页
    4.3 The role of power electronics in Smart Grid第54-56页
        4.3.1 Smart Interconnection and Power Electronics第55-56页
    4.4 Information and Control第56-58页
    4.5 Predictive Control technique as a Robust Method for Inverter第58-63页
Chapter 5 Pscad simulation of a DC-DC convertor第63-67页
    5.1 Modeling the DC-DC converter第63-67页
Chapter 6 Results Discussion and Conclusion第67-68页
    6.1 Conclution第67页
    6.2 Future Work第67-68页
REFERENCES第68-72页
Acknowledgement第72页

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